Yang Xiaofeng. Application of High Temperature Resisting sureshot-MWD in Xinggu 7 Block[J]. Petroleum Drilling Techniques, 2012, 40(1): 119-122. DOI: 10.3969/j.issn.1001-0890.2012.01.024
Citation: Yang Xiaofeng. Application of High Temperature Resisting sureshot-MWD in Xinggu 7 Block[J]. Petroleum Drilling Techniques, 2012, 40(1): 119-122. DOI: 10.3969/j.issn.1001-0890.2012.01.024

Application of High Temperature Resisting sureshot-MWD in Xinggu 7 Block

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  • Received Date: September 08, 2010
  • Revised Date: December 07, 2011
  • With the increasing of oilfield development difficulty,more and more high-temperature high-pressure (HTHP) deep wells and super-deep wells are being drilled.Common measurement while drilling (MWD) has high failure rate in HTHP environment,so it can not ensure the accuracy and continuity of measurement.In order to solve this problem,high temperature resisting sureshot-MWD is introduced.This measurement is designed to resist high temperature up to 175 ℃ and it is composed of brushless motor positive pulse generator,battery and probe.It features high temperature resistance,flexible setup and expandability.The unique rotary valve of sureshot-MWD has the function of automatic unfreezing and it can work normally in the intervals with sand content 3%.In field application,sureshot-MWD works normally in drilling high temperature intervals,the expanded LWD could realize accurate geo steering,which shortens drilling period and increases reservoir targeting ratio.
  • [1]
    刘修善,王继平.基于大地测量理论的井眼轨迹检测方法[J].石油钻探技术,2007,35(4):1-5.Liu Xiushan,Wang Jiping.A method for monitoring wellbore trajectory based on the theory of geodesy[J].Petroleum Drilling Techniques,2007,35(4):1-5.
    [2]
    马天寿,陈平,黄万志,等.钻井井下工程参数测量仪研究进展[J].断块油气田,2011,18(3):389-392.Ma Tianshou,Chen Ping,Huang Wanzhi,et al.Research progress on measuring instrument for downhole drilling engineering parameters[J].Fault-Block Oil Gas Field,2011,18(3):389-392.
    [3]
    Liu Xiushan.Universal technique normalizes and plans various well-paths for directional drilling.SPE 142145,2011.
    [4]
    Liu Xiushan,Shi Zaihong.Improved method makes a soft landing of well path[J].Oil Gas Journal,2001,99(43):47-51.
    [5]
    Liu Xiushan.New techniques accurately model and plan 3D well paths based on formation’s deflecting behaviors.IADC/SPE 115024,2008.
    [6]
    SY/T 5955—2004 定向井井身轨迹质量[S]. SY/T 5955—2004 Trajectory quality for directional wells[S].
    [7]
    Albahlani A M,Babadagli T.A critical review of the status of SAGD:where are we and what is next?.SPE 113283,2008.
    [8]
    Pratt C K,Hartmann R A.A magnetostatic well tracking technique for drilling of horizontal parallel wells.SPE 28319,1994.
    [9]
    刘传鹏,林承焰,赵玉华.樊107块特低渗透油藏有效开发技术讨论[J].断块油气田,2008,15(6):76-79.Liu Chuanpeng,Lin Chengyan,Zhao Yuhua.Effective development techniques of ultra-low permeability reservoir at Block Fan 107,Daluhu Oilfield[J].Fault-Block Oil Gas Field,2008,15(6):76-79.
    [10]
    苏义脑.水平井井眼轨道控制[M].北京:石油工业出版社,2000:172-184.Su Yinao.Horizontal well trajectory control[M].Beijing:Petroleum Industry Press,2000:172-184.
    [11]
    Wade D,Herman D,Nees J M,et al.The ultrashort radius radial system applied to thermal recovery of heavy oil.SPE 24087,1992.
    [12]
    赵峰.超短半径侧钻分支水平井曙1-23-0370CH井设计与施工[J].石油钻采工艺,2009,31(6):37-39.Zhao Feng.Design and application of super-short radius side-tracking technology in Shu 1-23-0370CH multilateral horizontal well[J].Oil Drilling Production Technology,2009,31(6):37-39.
    [13]
    秦绪英,肖立志,索佰峰.随钻测井技术最新进展及其应用[J].勘探地球物理进展,2003,26(4):313-322.Qin Xuying,Xiao Lizhi,Suo Baifeng.The development of logging-while-drilling and its application [J].Progress in Exploration Geophysics,2003,26(4):313-322.
    [14]
    刘鹏飞,刘良跃,司念亭,等.随钻测压工具Geo Tap在渤中25-1油田E3S井的应用[J].石油钻探技术,2009,37(3):42-44.Liu Pengfei,Liu Liangyue,Si Nianting,et al.Application of Geo Tap in E3S Well of Bozhong25-1 Oilfield[J].Petroleum Drilling Techniques,2009,37(3):42-44.
    [15]
    刘修善.定向钻井中方位角及其坐标的归化问题[J].石油钻采工艺,2007,29(4):1-5.Liu Xiushan.Naturalization of azimuth angles and coordinates in directional drilling[J].Oil Drilling Production Technology,2007,29(4):1-5.
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